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The Clustering of High-Redshift Galaxies in the Cold Dark Matter Scenario

机译:冷暗物质场景中高红移星系的聚类

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We investigate the clustering of high-redshift galaxies in five variants of the cold dark matter (CDM) scenario, using hydrodynamic cosmological simulations that resolve the formation of systems with circular velocities vc ≥ 100 km s-1 (Ω = 1) or vc ≥ 70 km s-1 (Ω = 0.4). Although the five models differ in their cosmological parameters and in the shapes and amplitudes of their mass power spectra, they predict remarkably similar galaxy clustering at z = 2, 3, and 4. The galaxy correlation functions show almost no evolution over this redshift range, even though the mass correlation functions grow steadily in time. Despite the fairly low circular velocity threshold of the simulations, the high-redshift galaxies are usually highly biased tracers of the underlying mass distribution; the bias factor evolves with redshift and varies from model to model. Predicted correlation lengths for the resolved galaxy population are 2-3 h-1 Mpc (comoving) at z = 3. More massive galaxies tend to be more strongly clustered. These CDM models have no difficulty in explaining the strong observed clustering of Lyman-break galaxies, and some may even predict excessive clustering. Because the effects of bias obscure differences in mass clustering, it appears that Lyman-break galaxy clustering will not be a good test of cosmological models but will instead provide a tool for constraining the physics of galaxy formation.
机译:我们使用流体动力学宇宙学模拟研究冷暗物质(CDM)情景的五个变体中的高红移星系的聚类,该模拟解决了具有vc≥100 km s-1(Ω= 1)或vc≥的圆速度的系统的形成70公里s-1(Ω= 0.4)。尽管这五个模型的宇宙学参数,质量功率谱的形状和振幅不同,但它们预测z = 2、3和4时的星系簇非常相似。在这个红移范围内,星系相关函数几乎没有演化,即使质量相关函数随时间稳定增长。尽管模拟的圆周速度阈值相当低,但高红移星系通常是基础质量分布的高度偏移示踪剂。偏差因数会随着红移而变化,并且因模型而异。在z = 3时,解析的星系种群的预测相关长度为2-3 h-1 Mpc(连通)。这些CDM模型在解释强烈观察到的莱曼破裂星系的聚类方面没有困难,有些甚至可以预测过度的聚类。由于偏差的影响掩盖了质量聚类中的差异,因此看来莱曼断裂星系聚类将不是对宇宙学模型的良好检验,而是将提供一个约束银河系形成物理的工具。

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